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Be the first to start one ». About Deepak Maini. Deepak Maini. Books by Deepak Maini. Need another excuse to treat yourself to a new book this week? We’ve got you covered with the buzziest new releases of the day. To create our Read more Trivia About Up and Running wi Customers who bought this item also bought.

Page 1 of 1 Start over Page 1 of 1. Deepak Maini. Kindle Edition. About the Author Deepak Maini Sydney, Australia is a qualified Mechanical Engineer with more than 19 years experience of working in the design industry. About the author Follow authors to get new release updates, plus improved recommendations. Brief content visible, double tap to read full content. Full content visible, double tap to read brief content.

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Top reviews Most recent Top reviews. Top reviews from the United States. There are 0 reviews and 4 ratings from the United States. Top reviews from other countries. Verified Purchase. Well written textbook, very detailed. Maini clearly explains each step in the exercises. I’m extremely happy with this purchase. If only more CAD related textbooks were written this well. Well written textbook, very detailed. Maini clearly explains each step in the exercises.

I’m extremely happy with this purchase. If only more CAD related textbooks were written this well. Report abuse. Sadlly the author dont reply my emails for the videos but apart for that is great book. See all reviews. Your recently viewed items and featured recommendations. Back to top. Get to Know Us. Make Money with Us. Amazon Payment Products.

Let Us Help You. Amazon Music Stream millions of songs. Amazon Advertising Find, attract, and engage customers. Amazon Drive Cloud storage from Amazon. Alexa Actionable Analytics for the Web. Sell on Amazon Start a Selling Account. AmazonGlobal Ship Orders Internationally. Click the Edit button to open the library and have access.

Click the Comment field of the last line and Enter any pertinent text for this connection, C1 is used. You can click the Section field and select W16x26 to apply this connection values. Click OK to store the values in the library. Those are introduced in the Section name definition of the library and can partially or fully replace a section name. It still applies to all AISC This means that this rule will apply the connection to W21x68, W21x62, W21x, etc.

This connection now becomes the default and will be used when no other connection is listed. Save your work Copying a connection. To apply the saved connection to the bottom of B1 column: On the Connection Vault palette, select the Plates at beam category and click corner base plate.

Select the B1 column. When prompted to select the concrete element choose No. The properties of the corner base plate will be displayed. Select the Library panel then select the C-1 row to apply the properties of C-1 column corner base plate values. Deleting a connection 1. Next, create a base plate for the C2 column. Save your work and save as Creating a base plate for C2 column. On the Connection Vault palette, select the Plates at beam category and click the Base plate icon.

Select the C2 column, type N and Enter. The base plate with anchor bolts is created at the end of the column. The column is shortened by the Plate thickness and the plate is welded to it.

Create a base plate for B2 W14x26 column. Finish all the base plate connections for Level 0 and save your work. Changing the Column section size The connection object properties can be modified, at any time, using Advance Properties or Advance Joint Properties.

When a column section is changed, all other elements related to the modification are automatically changed. Select the A2 column. The column section changes, and the base plate is automatically modified to the new configuration. Close the properties dialog box. Look at the result, open the connection properties dialog box and notice that the projections are still the same.

It can be seen also by verifying the distance. The same applies if the profile is moved or stretched; for example, the column is shortened, the connection readjust to the new column location. Select the gray intelligent box of A2 column base plate. Now select the base plate gray intelligent box of the B3 column. The B3 column base plate properties are now transferred to the A2 column base plate. Additionally, after creating the base plate connection at 2C grid, you can use the Propagate joint to apply the same connections to the 3B, 3A and 2A columns.

We will use the Advance Copy tool to copy the concrete footings to the bottom of the columns. You will be orientated into plan view. Change the View to a SE orientation.

Activate the Grid intersection osnap. Select the Object tab, Other objects panel, then the footings icon. Place the concrete footings at grid 1A and select the Advance Copy tool icon located on the Tools category. The Copy option is set by default. You have the option to put in a value or use the selection arrow to manually select the distance you want in-between the objects. Next Input the number of copies, for this exercise we will put 1.

Select objects button adjacent to the Preview button. You will be navigated back to the structure. Select the concrete footings you placed at grid 1A, then hit the Enter key. Select the preview button to see the results. The footings are displayed at grid 2A. Select the OK button to confirm. Copy the footing 3A. Repeat the process to add footings to the remainder of the columns.

The concrete footings might have to be adjusted because of the baseplate size. Make sure Include additional connections is checked. The example below gives an example of the footings or concrete elements created below the desired level. After inserting the concrete element, if you find it above or below the desired level, preform the following.

Select the Workplanes button. The Structures dialog box is displayed. To attach the top of the concrete footing to Level 0, Select the top button displayed as None. You will be prompted to select a level in which to attach the concrete footing. Click on Level 0 text. Level None is now displayed as Level 0.

The concrete element is now attached to the correct level on the Workplane Structures. Select the concrete footing then hit the Enter key. You will be prompted to select the objects to bind to the Workplane. Select the Red geometry points. Shear plate connection Next, create a shear plate connection on the first floor Level 1 , between the beam and the column at A1. Select the Home tab Project panel and open the Project Explorer.

Make level 1 active by right clicking on the text and choosing Activate from the contextual menu. If you change the altitude all beams, and joints connections associated with the level will move to the new altitude. Open the Connection vault. Select the Platforms beams category, click the Shear plate icon. Select the Column W14x22 at A1, and press Enter. Select the Beam W14x22 at A1, and press Enter. The shear plate connection is created, and the properties dialog box appears.

After all the settings are complete, you can save the settings to the library located on the Properties panel. Next, connect the W10x26 beam to the W14x22 beams with clip angles. Be sure that Level 1 is turned on and activated. Turn on Level 0 also. Open the Connection vault located on the Extended modeling tab, Joints panel.

Select the Platform beams category, then select the Clip angel option as seen in the figure below. See the scenarios for the selected clip angle and remember to read the Selection order as it is vital as how the connection will be placed.

The element the bolt head touches also has an impact on drawing output Take note of the: Profiles used for this connection, Description and Options allotted to this connection joint. Select the W14x22 beam 1 , then Enter. Select the W10x26 beam 2 , then Enter. The connection is created, and the dialog box is displayed. Make any modifications needed. Save the connection to the Library for later use or use the ready-made connections among the list.

Using the Propagate joint toolset Save your work as 03 Using the propagate joint toolset. Select the newly created clip angle Joint box, right clicking the select the Propagate joint to create a Parent and Child joint. The clip angle connection is applied only to the similar connections that were visible. End the isolation for the hidden W10x26 beams on grids 1 and grid B and apply connections.

Apply connections to the other ends of the W14x22 beams located on grids 1 and grid B. Advance steel gives you the flexibility to add more than one connection to a column and beam.

When completed, save and save the structure as Adding a grating to the Mezzanine. Adding a grating to the Mezzanine Use the Grating at poly line toolset to add a steel platform cover. Draw a polyline using the AutoCAD command around the perimeter. Change the visual style if need be. Use the AutoCAD. XY point filter to assist in defining the Polyline for the Grating at Polyline tool.

Uncheck the magnet in Options from the Drafting panel if you seem to be snapping to unwanted objects. On the Objects tab, Grating panel, select the flyout and choose Grating at Polyline. Select the newly created polyline to apply the grating to. The Grating dialog box is displayed where you can define your specific type of grating. Use the plate Element 8. You will be prompted to select the grating then the column. The contour processing dialog box is displayed where you can customize further.

Activate Level 2, set your UCS is set to world. Set your orientation to SE. Open the Connection Vault and from the Platform beams category select the Single side end plates. The connection is created, and the properties dialog box is displayed where further customization can be implemented. Split the beam 21×55 at the center of the structure then use the Double sided end plate with safety bolt.

For the connection at grid 3B, use the Gable wall end plate located on the Column Beam category of the Connection Vault. Hide this section. Open the Connection Vault and from the Platform beams category select the End plates.

You can use the AutoCAD line tool. Use the Selection filter category to turn off any elements that might obstruct your workflow. Save your work as 02 Creating a roof opening. Make sure level 2 s activated and the Roof is on. The UCS can be set at World. Open the Connection Vault 3. From the Miscellaneous category select the Structural element roof opening. Select beam 1 then hit the Enter key. Select beam 2 then hit the Enter key. Right click and from the contextual menu, choose the mid-point between two points options then hit the Enter key The window opening is created, and the dialog box is displayed where you can further customize the opening.

All the Advance steel properties of any given object type can be searched for. It is possible to search for all objects that do not match a certain criteria by selecting the Not column in front of them. You can save queries by selecting the save button. Groups allows you to select any collection of objects by any means and associate them together. If you turn on the bulb by the group name, all objects that do not belong to the group will be hidden from display.

Additionally, you can mark all elements of the group in red as well as select all members directly without marking. You can also create folders for the groups. On the General tab select the complete model radial button. On the Objects tab, select the filter criteria, Steel beam, folded beam, folded plate radial button. The Column-Model role querie is appended to the list. Select the Light bulb.

All the Columns with the model role Column will be isolated. On the Naming tab, put a check in Model role box scroll to Column and select it from the list. Use to select marked objects. Select the Save button and save the query as Column-Model role. Select OK twice to append the query to the Project Explorer.

On the General panel select the complete model radial button and assign a green color. On the Objects tab, select the filter criteria: Steel beam. The Beams-W21x55 querie is appended to the list.

Use to select the marked objects. Select OK 7. Select OK again to append the query to the Project Explorer. In this exercise, you will learn how to create queries for plates with a specific thickness. On the General tab, select the complete model radial button. You can assign a color if preferred. On the Objects tab, select the filter criteria: Plate. On the Planar elements tab, put a check in Plate thickness 7. Select the Save button and name the query Plates-thickness 1″.

Select OK 6. Use to show all elements. On the General tab, select the complete model radial button, assign a color. On the Objects tab, select the filter criteria: Bolt. On the Bolts panel, put a check in Type box, and in the field to the right select A Put a check in Assembly Location and in the field to the right select Site.

Put a check in Diameter and in the field to the right and type. Select OK 8. By organizing elements into groups, you can control the visibility of several objects and reduce the visual complexity of a model. All created groups are listed in the Project Explorer in the Groups panel of the Structures tab.

Creating groups 1. Select the create new group icon to create a new group, name the group Roof opening then select OK. The Roof opening will be appended to the Group category; however, when turn on, it will be empty. To add the roof elements right click on the group name and select Add elements.

Left window selection of the elements you want included in the roof opening click then hit the Enter key. Select the light bulb to the left of the text to view the elements. Additional unwanted elements that were selected will be visible. To remove them, select the text, right click from the contextual menu, select Remove elements option.

Select the elements from the structure you want removed from the group. Toggle the light bulb on and off to see the results. Three Sections W14x22, and two beam W21x55 were removed, See figure below. Select a point in the Groups area, right click then select Create a new group and name it Level-2 The Level-2 will be appended to the Group category; however, if you select the light bulb nothing happens, and it will be empty. The elements on Level 2 needs to be added.

Select the show all elements icon to view the entire structure. Turn off or hide unwanted elements. Change the orientation of the model to Front then window select levels 0 and 1. Right click on the group name Level-2 and select Add elements. Turn on Level-2 by selecting the light bulb. Remove the Roof opening components. Select the Level-2 text, right click and choose, remove elements,remove the window opening elements, as shown in the figure.

Toggle on level-2 twice to see the results as shown below. Create a folder of the Level 2 1. Select an area in the Groups window, right click and select Create folder and name it Level-2 Roof opening.

The folder is created and appended to the Groups category. Toggle the light bulbs off and on for the different groups to see the results. Drag and drop the Level-2 and Roof Opening in the newly created folder. Drag and drop the Level 2 and the Roof opening into the newely created Level- 2 Roof opening folder. You can save the settings as a template. For this example, it is named MQG-Template. Save and fill in the description. You can delete the template if need be. Expand the Project Explorer panel.

You can now use the template with a new project but will be inaccessible. You must create a dummy View to activate it. Use the tools on the Selection filters category to turn off the model view boxes and other elements you want hidden. For this exercise we will apply a Model role of Beams to the Object type beams in the structure. Open the Model browser. Select Edit Properties box in the upper left corner.

To sort the columns, select the heading. Select the beams that do not have a model role using the AutoCAD shift select. Once the elements are selected hold down the Ctrl with the Alt key. Select the inner right cell and the Beam model role from the drop down. The model role will be appended to the elements in one shot.

Select the refresh button to update the changes. The structure will have to be numbered to acknowledge the changes. The elements will be highlighted back in the model structure. Object interferences may be caused by various modifications made to plates, bolts, members and their connections. This tool finds all interference cases so that the model can be fixed before you create the drawings. The Advance Steel Clash check function checks selected elements or the entire structure.

Any interference will be displayed as a red collision solid and listed in a window. The Clash check tool is located on the Extended Modeling tab Checking panel. In this example, the shear plate connection will be checked for interferences. Make a right to left window selection encompassing the shear plate intelligent box then select the column, and the beam.

On the Extended Modeling tab, checking panel, click the Clash check tool. The results of the selected elements are listed in a window. To find a collision, double click on the row, and an auto-zoom will show you where in the structure the collision solid is located. This symbol can be deleted. The index number is listed in the window by the clash check. To find a collision from the list, double click on the index number. On the bottom of this window, there are 5 icons: 1.

Click to start the clash check Click In complex models, collision solids are difficult to find. Click to clear the marked object, and erase the red arrows. Click to ignore the selected line, for the Clash checking process. Click , to reset the previous action and allow the objects to be included in the Clash checking process once again.

Steel construction technical checking Where clash checking looks for items that overlap other items you can use the technical check tool to look for other design factors such as bolts too close to the edge of the material.

The technical check is also useful in locating a specific error in a massive structure. For each error the following information is provided. Take note of the handle of the connection object in order to find and fix the error. Double click on the row to zoom in on the connection with the error in the model structure. To search by the handle number located in the description column, select the Search Marked Objects”.

Type the handle 8DBBthen hit the enter key. An arrow will point to the element with the issue. After identifying the object, you need to determine and take the appropriate corrective action.

Although the list may seem extensive, often the action you take such as adjusting the bolt spacing in a joint will fix several. Rather than trying to fix many in one go just fix one or two at a time, run a clash check diminish the number of clashes. The joint design creates a design report for each connection with all verifications and conditions. Select a joint in the model. In the properties dialog box, on the Joint design tab, select the Check option if the connection was not already calculated.

Select the Check button to determine if the joint passed or failed. Next, In the properties dialog box, on the Joint design tab, click the Report button. You must have access to the internet. This report is saved in your project folder in a sub folder called calculation. See format example below. Rather than trying to fix many clashes in one go, fix two or three then rerun the clash check.

If the connection number is not visible you can display them with a setting in the Advance Steel Management Tools. As seen in the figure below. Remember to load setting in Advance to lock in the changes made.

 
 

 

– : Up and Running with Autodesk Advance Steel Volume 1 eBook : Maini, Deepak: Books

 

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– Advance Steel –

 
 
This textbook covers in detail the tools that are used to generate 2D detail and fabrication drawings of the 3D structural model created in. This textbook covers in detail the tools that are used to create a 3D structural model. Real-world industry examples are specially chosen.